DocumentCode :
2396350
Title :
Gi-4 Liner Plasma For Al-mg X-ray Laser Pumping
Author :
Baksht, R.B. ; Bugaev, S.P. ; Datsko, I.M. ; Chuk, B. M Koval ; Kokshenev, V.A. ; Luchinsky, A.V. ; Koshevoy, M.O. ; Tov, V. V Losku ; Syats, G. A Me ; Oreshkin, V.I. ; Rusakich, A.G. ; Roupasov, A.A. ; Fedin, D.A. ; Shikanov, A.S.
Author_Institution :
High Ourrent Electronics Institute, Tomsk, USSR
fYear :
1991
fDate :
16-19 June 1991
Firstpage :
461
Lastpage :
464
Abstract :
We calculated the plasma radiation of 1.5 MA wire array implosion and found that plasma radiation yield should be sufficient for the 1-2 cm/sup -1/ gain in the pumped plasma. In this case a pumped plasma arranges on 1-2 cm distance from pumping one. Preliminary experiments were performed with the help of Gi -4 inductive storage machine. The comparative study of experimental and calculating results shown that pumping line yield is sufficient for inverse density creation ( 10/sup 9/ Wt from one centimeter of liner). The Al-Mg photopump soft X-ray laser scheme is one of the possible ways to get the coherent radiation [1]. In such a scheme the AIXI/sup 2/S /sub 1/2/-/sup 2/P/sub 1/2/ line (/spl lambda/ = 48.338 /spl Aring/) radiation pumps 4p levels in MgIX (/spl lambda/ =48.34 /spl Aring/). We have analysed the realisation of this scheme with the help of Mg target evaporation by the Al liner Z-pinch radiation [2]. Our simulation showed the 1cm /sup -1/ gain of Mg plasma can be obtained by the 10 /sup 9/ Wt/cm pump line radiation and 10 /sup 11/ Wt/cm total Z-pinch radiation. The distance between the target and Z-pinch is 1 cm approximately. In this study we planned to demonstrate the possibility of receiving the request radiation at the 1,2-1,5 MA modest current.
Keywords :
Inductance; Laser excitation; Lattices; Plasma diagnostics; Plasma measurements; Plasma x-ray sources; Pump lasers; Switches; Wire; X-ray lasers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pulsed Power Conference, 1991. Digest of Technical Papers. Eighth IEEE International
Conference_Location :
San Diego, CA, USA
Print_ISBN :
0-7803-0177-3
Type :
conf
DOI :
10.1109/PPC.1991.733322
Filename :
733322
Link To Document :
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